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Dynamic Analysis of Electric Bus Chassis Using Finite Element Method

机译:电动客车底盘动力学的有限元分析

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This paper deals with the investigation of vibrational characteristic of electric bus chassis including natural frequency and mode shapes. Chassis protects the passenger from the external impact force and gives the strength and flexibility of the bus in a changing condition. The chassis is subjected to load which are static, dynamic and cyclic loading, therefore the chassis should have good properties that can withstand those types of load. During the travel, chassis was excited by road roughness, engine, transmission and more. Natural frequencies and mode shapes can be obtained by using finite element method. Simulation was carried out by using commercial finite element packages Abaqus in order to find the optimum design that has good dynamic characteristic. Three materials were used in simulation with various of thicknesses. Based on the result of simulation, the AISI 4130 Alloy steel with 6 mm thickness has been chosen as the best model that has less possibility to resonance.
机译:本文研究了电动客车底盘的振动特性,包括固有频率和振型。底盘可保护乘客免受外部冲击力的影响,并在变化的条件下提供公交车的强度和灵活性。机箱承受的是静态,动态和循环负载,因此机箱应具有可以承受这些类型负载的良好性能。在旅途中,底盘因路面崎,不平,发动机,变速箱等因素而兴奋不已。固有频率和振型可以通过有限元法获得。为了找到具有良好动态特性的最佳设计,使用商业有限元软件包Abaqus进行了仿真。三种材料用于各种厚度的仿真中。根据仿真结果,厚度为6 mm的AISI 4130合金钢已被选为最佳模型,其共振可能性较小。

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